Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation

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  • Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation
  • Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation
  • Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation
  • Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation
  • Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation
  • Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation
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  • Overview
  • Product Features
  • Detailed Photos
  • FAQ
Overview

Basic Info.

Model NO.
AY-GEL
Certification
CE, GMP
Stationary Phase
Solid Adsorbent
Mobile Phase
Liquid
Chromatography Type
Liquid Chromatography
Chromatographic Column Type
Convetional Analytical Column
Chromatographic Column Length
10~30cm
Chromatographic Column Diameter
2~5mm
USP Ref.
L1/L7/L3/L13
Particle Size (Um)
3,5,10
Surface Area(M2/G)
320
Pore Size(a)
120
Transport Package
Cartons
Specification
45*20*38cm
Trademark
AIYI
Origin
China
HS Code
9027900000
Production Capacity
100 Sets/Month

Packaging & Delivery

Package Size
29.00cm * 10.00cm * 5.00cm
Package Gross Weight
0.500kg

Product Description

Octadecylsilanized Silica Gel HPLC Columns for Peptide Separation
hplc column selection
1. Column tube specifications: including column length and inner diameter, common specifications include 150mm x 4.6mm. The longer the column length, the better the separation effect, but it will increase the column pressure and analysis time. A shorter column length (such as 50mm) is usually sufficient to provide good separation efficiency.
2. Particle size: Particle size affects separation speed and column efficiency. Smaller particle sizes (such as 1.8 μ m, 3.5 μ m) can provide higher column efficiency, but require higher column pressure. 5 μ m filler is a commonly used choice for analysis.
3. Pore size: Pore size affects the retention characteristics of the sample, and common pore sizes include 60 Å, 120 Å, and 300 Å. Small molecules are suitable for pore sizes of 80-120 Å, while large molecules are suitable for pore sizes of 300 Å.
4. Shape of packing particles: Spherical particles can reduce column pressure and prolong column life in high viscosity mobile phases.
5. Specific surface area: Specific surface area is related to particle size and pore size, which affects the contact area between the sample and the filler, thereby affecting the separation effect.
6. Chemical properties: including silicone matrix, polymer matrix, carbon loading, bonding phase, and end capping. Different chemical properties affect the separation selectivity and stability of chromatographic columns.
7. pH Range: The pH range of a chromatographic column affects its performance under specific conditions.
8. Column efficiency: It is usually measured by the theoretical number of trays and is an important indicator for evaluating the efficiency of chromatographic columns.
9. Separation degree: Separation degree is an indicator of the separation performance of a chromatographic column.
10. Peak symmetry: Peak symmetry is an indicator that describes the degree of symmetry of chromatographic peaks, and a symmetrical peak shape helps improve the accuracy of analysis.

*Tell us your requirements, and we will select the most suitable chromatographic column for you
Octadecylsilanized Silica Gel HPLC Columns for Peptide SeparationOctadecylsilanized Silica Gel HPLC Columns for Peptide Separation
Product Features

 

1.Proprietary surface modification for smooth, uniform and inert silica surface.
2.Long column lifetime and more injections.
3.Unique bonding chemistry and end-capping technology.
4.Exceptional lot-to-lot reproducibility.
5.Excellent peak shape, especially for polar, acidic and basic compounds.
6.Available in analytical and prep types, of all dimensions and sample sizes.
7.Series of stationary reversed phase and normal phases for wide selectivity.
8.Best value - high premium products with very competitive price.
Detailed Photos

 

Octadecylsilanized Silica Gel HPLC Columns for Peptide SeparationOctadecylsilanized Silica Gel HPLC Columns for Peptide Separation
HPLC Columns Specifications
USP Ref. Particle size (um) Pore Size(A) Surface
Area(m2/g)
C% pH Range Endcapped
C18-Aqueous L1 3,5,10 120 320 12% 1.5-10 Y
C18-Universal L1 1.8.3,5,10 120 320 17% 1.5-10 Y
300 90 8%
C18-Low pH L1 5 130 160 10% 2.0-8.0 N
C18-Alkaline L1 3,5,10 120 320 17% 1.5-10 N
C8-Universal L7 1.8,3,5,10 120 320 12% 1.5-10 Y
300 90
C8-Low pH L7 5 120 320 5.50% 1.0-8.0 N
C8-Fluorine L7 5 120 320 12% 1.5-10 Y
C1 L13 5 120 320 4% 1.5-10 Y
C4 L26 3.5 120 320 8% 1.5-10 Y
300 90 3%
SiO2 L3 5 120 320 N/A 1.5-10 N
NH2 L8 5 120 320 N/A 1.5-10 N
CN L10 5 120 320 6% 1.5-10 N
Phenyl L11 3,5.10 120 320 12% 1.5-10 Y
300 90 6%
Phenyl-Ether / 5 120 320 12% 1.5-10 Y
Polar RP L1 1.8,3,5,10 120 320 18% 1.5-10 Y
300 90
SCX / 5 120 320 N/A 2.0-8.0 N
SAX / 5 120 320 7.50% 2.0-8.0 N
Diol / 5 120 320 2.50% 1.5-10 N
C30 L62 5 120 320 17% 1.5-10 Y
Amino Acid / 3, 5 120 320 17% 1.5-10 Y
PAH / 5 120 320 22% 1.5-10 Y
PFP / 5 120 320 13% 1.5-10 Y
HILIC Amide / 5 120 320 7% 2.0-8.0 N

Octadecylsilanized Silica Gel HPLC Columns for Peptide SeparationOctadecylsilanized Silica Gel HPLC Columns for Peptide Separation
No accident shipping term:
DHL: 5-7 working days;
UPS: 7-9 working days;
FedEx: 7-9 working days;
EMS: 25-30 working days;
China Post: Depends on ship to which country;
Sea: Depends on ship to which country
FAQ

 

1. Are the columns compatible with my existing chromatography system and detectors?
Our columns are designed with a variety of interface types to ensure compatibility with most chromatography systems and detectors. If you provide us with the specific model number of your existing system, we can recommend the most suitable column model.

2. What is the separation efficiency of the column? How high resolution and selectivity can it achieve?
Our columns use advanced packing technology and unique stationary phase chemistry to ensure high separation efficiency and resolution. We can provide customized columns according to the type of sample you need to analyze and the separation requirements.

3. What are the stationary phase and carrier materials for the columns?
Our columns are made of high quality materials with excellent chemical stability and durability. Whether it is polar or non-polar samples, we have the appropriate column products to meet the analytical needs of different chemical properties.

4. Are the column dimensions (length, inner diameter) and particle size specifications suitable for my analytical needs?
We offer a wide range of column sizes and specifications to suit different analytical methods and sample volumes. You can choose the appropriate column length, inner diameter and particle size according to your analytical needs to achieve the best separation effect.

5. Do you offer cost-effective options, including running cost and lifetime?
Our columns strive to offer competitive pricing while maintaining performance. We focus on long-term customer relationships, so we offer cost-effective products that take into account running costs and column lifetime to ensure that you get cost-effective results over the long term.

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